首页> 外文期刊>Clinical Chemistry: Journal of the American Association for Clinical Chemists >Performance Characteristics of a Carbon Isotope Ratio Method for Detecting Doping with Testosterone Based on Urine Diols: Controls and Athletes with Elevated Testosterone/Epitestosterone Ratios
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Performance Characteristics of a Carbon Isotope Ratio Method for Detecting Doping with Testosterone Based on Urine Diols: Controls and Athletes with Elevated Testosterone/Epitestosterone Ratios

机译:碳同位素比法检测基于尿液中的睾丸激素的性能特征:对照组和运动员睾丸激素/表睾酮比率升高

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Background: Carbon isotope ratio methods are used in doping control to determine whether urinary steroids are endogenous or pharmaceutical.Methods: Gas chromatography-combustion-isotope ratio mass spectrometry (GC-C-IRMS) was used to determine the δ13C values for 5β-androstane-3α,17β-diyl diacetate (5βA), 5α-androstane-3α,17β-diyl diacetate (5αA), and 5β-pregnane-3α,20α-diyl diacetate (5βP) in a control group of 73 healthy males and 6 athletes with testosterone/epitestosterone ratios (T/E) 6.Results: The within-assay precision SDs for 5βA, 5αA, and 5βP were ± 0.27‰, ± 0.38‰, and ± 0.28‰, respectively. The between-assay precision SDs ranged from ± 0.40‰ to ± 0.52‰. The system suitability and batch acceptance scheme is based on SDs. For the control group, the mean δ13C (SD) values were ?25.69‰ (± 0.92‰), ?26.35‰ (± 0.68‰), and ?24.26‰ (± 0.70‰), for 5βA, 5αA, and 5βP, respectively. 5βP was greater than 5βA and 5αA ( P 0.01), and 5βA was greater than 5αA ( P 0.01). The means ? 3 SD were ?28.46‰, ?28.39‰, and ?26.37‰ for 5βA, 5αA, and 5βP, respectively. The maximum difference between 5βP and 5βA was 3.2‰, and the maximum 5βA/5βP was 1.13. Three athletes with chronically elevated T/Es had δ13C values consistent with testosterone administration and three did not.Conclusions: This GC-C-IRMS assay of urine diols has low within- and between-assay SDs; therefore, analysis of one urine sample suffices for doping control. The means, SDs, ±3 SDs, and ranges of δ13C values in a control group are established. In comparison, testosterone users have low 5βA and 5αA, large differences between 5βA or 5αA and 5βP, and high 5βA/5βP and 5αA/5βP ratios.
机译:背景:碳同位素比方法用于掺杂控制中,以测定尿中类固醇是内源性还是药物性方法:方法:气相色谱-燃烧-同位素比质谱法(GC-C-IRMS)测定5β-雄烷的δ13C值-73α健康男性和6名运动员的对照组中的-3α,17β-二乙酸二乙酯(5βA),5α-雄甾烷3α,17β-二乙酸二乙酯(5αA)和5β-孕烯-3α,20α-二乙酸二乙酯(5βP)结果:5βA,5αA和5βP的测定内精密度SD分别为±0.27‰,±0.38‰和±0.28‰。批间精密度SD的范围为±0.40‰至±0.52‰。系统适用性和批量验收方案基于SD。对照组的5βA,5αA和5βP的平均δ13C(SD)值分别为25.69‰(±0.92‰),26.35‰(±0.68‰)和24.26‰(±0.70‰)。 。 5βP大于5βA和5αA(P <0.01),5βA大于5αA(P <0.01)。办法 ? 5βA,5αA和5βP的3个SD分别为28.46‰,28.39‰和26.37‰。 5βP和5βA之间的最大差为3.2‰,最大5βA/5βP为1.13。三名T / E长期升高的运动员的δ13C值与睾丸激素给药相符,而三名运动员的δ13C值与之不相符。结论:尿二醇的GC-C-IRMS测定具有较低的测定内和测定间SD。因此,对一种尿液样品进行分析就足以进行掺杂控制。建立了对照组的均值,标准差,±3标准差和δ13C值范围。相比之下,睾丸激素使用者的5βA和5αA较低,5βA或5αA和5βP之间的差异较大,并且5βA/5βP和5αA/5βP的比率较高。

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